US5130307A - Aminoesters of rapamycin - Google Patents
Aminoesters of rapamycin Download PDFInfo
- Publication number
- US5130307A US5130307A US07/657,294 US65729491A US5130307A US 5130307 A US5130307 A US 5130307A US 65729491 A US65729491 A US 65729491A US 5130307 A US5130307 A US 5130307A
- Authority
- US
- United States
- Prior art keywords
- carbon atoms
- rapamycin
- compound
- pharmaceutically acceptable
- acceptable salt
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
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Classifications
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D498/00—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
- C07D498/12—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains three hetero rings
- C07D498/18—Bridged systems
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07H—SUGARS; DERIVATIVES THEREOF; NUCLEOSIDES; NUCLEOTIDES; NUCLEIC ACIDS
- C07H19/00—Compounds containing a hetero ring sharing one ring hetero atom with a saccharide radical; Nucleosides; Mononucleotides; Anhydro-derivatives thereof
- C07H19/01—Compounds containing a hetero ring sharing one ring hetero atom with a saccharide radical; Nucleosides; Mononucleotides; Anhydro-derivatives thereof sharing oxygen
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K5/00—Peptides containing up to four amino acids in a fully defined sequence; Derivatives thereof
- C07K5/04—Peptides containing up to four amino acids in a fully defined sequence; Derivatives thereof containing only normal peptide links
- C07K5/06—Dipeptides
- C07K5/06008—Dipeptides with the first amino acid being neutral
- C07K5/06017—Dipeptides with the first amino acid being neutral and aliphatic
- C07K5/06026—Dipeptides with the first amino acid being neutral and aliphatic the side chain containing 0 or 1 carbon atom, i.e. Gly or Ala
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K38/00—Medicinal preparations containing peptides
Definitions
- This invention relates to novel esters of rapamycin and a method for using them in the treatment of transplantation rejection, host vs. graft disease, autoimmune diseases, diseases of inflammation, and fungal infections.
- Rapamycin is a macrocyclic triene antibiotic produced by Streptomyces hygroscopicus, which was found to have antifungal activity, particularly against Candida albicans, both in vitro and in vivo [C. Vezina et al., J. Antibiot. 28, 721 (1975); S. N. Seghal et al., J. Antibiot. 28, 727 (1975); H. A. Baker et al., J. Antibiot. 31, 539 (1978); U.S. Pat. No. 3,929,992; and U.S. Pat. No. 3,993,749].
- Rapamycin alone (U.S. Pat. No. 4,885,171) or in combination with picibanil (U.S. Pat. No. 4,401,653) has been shown to have antitumor activity.
- R. Martel et al. [Can. J. Physiol. Pharmacol. 55, 48 (1977)] disclosed that rapamycin is effective in the experimental allergic encephalomyelitis model, a model for multiple sclerosis; in the adjuvant arthritis model, a model for rheumatoid arthritis; and effectively inhibited the formation of IgE-like antibodies.
- rapamycin has been shown to be effective in inhibiting transplant rejection (U.S. patent application Ser. No. 362,544 filed Jun. 6, 1989).
- Cyclosporin A and FK-506, other macrocyclic molecules also have been shown to be effective as immunosuppressive agents, therefore useful in preventing transplant rejection [FASEB 3, 3411 (1989); FASEB 3, 5256 (1989); and R. Y. Calne et al., Lancet 1183 (1978)].
- rapamycin Mono- and diacylated derivatives or rapamycin (esterified at the 28 and 43 positions) have been shown to be useful as antifungal agents (U.S. Pat. No. 4,316,885) and used to make water soluble prodrugs of rapamycin (U.S. Pat. No. 4,650,803). Recently, the numbering convention for rapamycin has been changed; therefore according to Chemical Abstracts nomenclature, the esters described above would be at the 31- and 42-positions.
- This invention provides derivatives of rapamycin which are useful as immunosuppressive, anti-inflammatory, and antifungal agents having the structure ##STR4## wherein R 1 and R 2 are each, independently, hydrogen or ##STR5## with the proviso that R 1 and R 2 are not both hydrogen; R 3 is hydrogen, alkyl of 1-6 carbon atoms, aralkyl of 7-10 carbon atoms, --(CH 2 ) q CO 2 R 6 , --(CH 2 ) r NR 7 CO 2 R 8 , carbamylalkyl of 2-3 carbon atoms, aminoalkyl of 1-4 carbon atoms, hydroxyalkyl of 1-4 carbon atoms, guanylalkyl of 2-4 carbon atoms, mercaptoalkyl of 1-4 carbon atoms, alkylthioalkyl of 2-6 carbon atoms, indolylmethyl, hydroxyphenylmethyl, imidazoylmethyl or phenyl which is optionally mono-, di-, or tri-
- R 4 and R 7 are each, independently, hydrogen, alkyl of 1-6 carbon atoms, or aralkyl of 7-10 carbon atoms;
- R 5 , R 6 , and R 8 are each, independently, alkyl of 1-6 carbon atoms, aralkyl of 7-10 carbon atoms, fluorenylmethyl, or phenyl which is optionally mono-, di-, or tri-substituted with a substituent selected from alkyl of 1-6 carbon atoms, alkoxy of 1-6 carbon atoms, hydroxy, cyano, halo, nitro, carbalkoxy of 2-7 carbon atoms, trifluoromethyl, amino, or a carboxylic acid;
- n 0-4;
- n 0-4;
- p 1-2;
- r 0-4;
- the pharmaceutically acceptable salts may be formed from inorganic cations such as sodium, potassium, and the like and organic acids such as, acetic, lactic, citric, tartaric, succinic, maleic, malonic, gluconic, and the like, when R 3 contains a basic amino group.
- the compounds of this invention can be prepared by acylating rapamycin with an acylating agent having the general structure ##STR7## where X is OH in the presence of a coupling reagent, such as dicyclohexylcarbodiimide.
- the compounds of this invention also can be prepared using a mixed anhydride of the above described carboxylic acid as the acylating species.
- the acylating species can be an acid halide, where X can be Cl, Br, or I.
- the acylating groups used to prepare the compounds of this invention are commercially available or can be prepared by methods that are disclosed in the literature.
- Immunosuppressive activity was evaluated in an in vitro standard pharmacological test procedure to measure lymphocyte proliferation (LAF) and in two in vivo standard pharmacological test procedures.
- the first in vivo procedure was a popliteal lymph node (PLN) test procedure which measured the effect of compounds of this invention on a mixed lymphocyte reaction and the second in vivo procedure evaluated the survival time of a pinch skin graft.
- PPN popliteal lymph node
- the comitogen-induced thymocyte proliferation procedure was used as an in vitro measure of the immunosuppressive effects of representative compounds. Briefly, cells from the thymus of normal BALB/c mice are cultured for 72 hours with PHA and IL-1 and pulsed with tritiated thymidine during the last six hours. Cells are cultured with and without various concentrations of rapamycin, cyclosporin A, or test compound. Cells are harvested and incorporated; radioactivity is determined. Inhibition of lymphoproliferation is assessed in percent change in counts per minute from non-drug treated controls. The results are expressed by the following ratio, or as the percent inhibition of lymphoproliferation of 1 ⁇ M. ##EQU1##
- a mixed lymphocyte reaction occurs when lymphoid cells from genetically distinct animals are combined in tissue culture. Each stimulates the other to undergo blast transformation which results in increased DNA synthesis that can be quantified by the incorporation of tritiated thymidine. Since stimulating a MLR is a function of disparity at Major Histocompatibility antigens, an in vivo popliteal lymph node (PLN) test procedure closely correlates to host vs. graft disease. Briefly, irradiated spleen cells from BALB/c donors are injected into the right hind foot pad of recipient C3H mice. The drug is given daily, p.o. from Day 0 to Day 4.
- tritiated thymidine is given i.p., b.i.d.
- the hind popliteal lymph nodes are removed and dissolved, and radioactivity counted.
- the corresponding left PLN serves as the control for the PLN from the injected hind foot.
- Percent suppression is calculated using the non-drug treated animals as allogenic control. Rapamycin at a dose of 6 mg/kg, p.o. gave 86% suppression, whereas cyclosporin A at the same dose gave 43% suppression. Results are expressed by the following ratio: ##EQU2##
- the second in vivo test procedure is designed to determine the survival time of pinch skin graft from male DBA/2 donors transplanted to male BALB/c recipients.
- the method is adapted from Billingham R.E. and Medawar P.B., J. Exp. Biol. 28:385-402, (1951). Briefly, a pinch skin graft from the donor is grafted on the dorsum of the recipient as a homograft, and an autograft is used as control in the same region.
- the recipients are treated with either varying concentrations of cyclosporin A as test control or the test compound, intraperitoneally. Untreated recipients serve as rejection control.
- the graft is monitored daily and observations are recorded until the graft becomes dry and forms a blackened scab. This is considered as the rejection day.
- the mean graft survival time (number of days ⁇ S.D.) of the drug treatment group is compared with the control group.
- Antifungal activity of the compounds of this invention was measured against 5 strains of Candida albicans using a plate test procedure for measurement of inhibition. The following represents the typical procedure used. Compound to be tested was placed on sterile dried 1/4" plate disks, and allowed to dry. Agar plates were seeded with fungi and allowed to solidify. The impregnated disks were placed on the seeded Agar surface and incubated for the time required for the particular culture. Results are expressed in MIC ( ⁇ g/ml) to inhibit growth. The results of this test procedure showed that the compounds of this invention have antifungal activity; however, it was surprising that the compounds of this invention were less active than the parent compound, rapamycin.
- the compounds are useful in the treatment of transplantation rejection such as, heart, kidney, liver, bone marrow, and skin transplants; autoimmune diseases such as, lupus, rheumatoid arthritis, diabetes mellitus, myasthenia gravis, and multiple sclerosis; and diseases of inflammation such as, psoriasis, dermatitis, eczema, seborrhea, inflammatory bowel disease; and fungal infections.
- transplantation rejection such as, heart, kidney, liver, bone marrow, and skin transplants
- autoimmune diseases such as, lupus, rheumatoid arthritis, diabetes mellitus, myasthenia gravis, and multiple sclerosis
- diseases of inflammation such as, psoriasis, dermatitis, eczema, seborrhea, inflammatory bowel disease
- fungal infections such as, psoriasis, dermatitis, eczema, seborrhea,
- the compounds may be administered neat or with a pharmaceutical carrier to a mammal in need thereof.
- the pharmaceutical carrier may be solid or liquid.
- a solid carrier can include one or more substances which may also act as flavoring agents, lubricants, solubilizers, suspending agents, fillers, glidants, compression aids, binders or tablet-disintegrating agents; it can also be an encapsulating material.
- the carrier is a finely divided solid which is in admixture with the finely divided active ingredient.
- the active ingredient is mixed with a carrier having the necessary compression properties in suitable proportions and compacted in the shape and size desired. The powders and tablets preferably contain up to 99% of the active ingredient.
- Suitable solid carriers include, for example, calcium phosphate, magnesium stearate, talc, sugars, lactose, dextrin, starch, gelatin, cellulose, methyl cellulose, sodium carboxymethyl cellulose, polyvinylpyrrolidine, low melting waxes and ion exchange resins.
- Liquid carriers are used in preparing solutions, suspensions, emulsions, syrups, elixirs and pressurized compositions.
- the active ingredient can be dissolved or suspended in a pharmaceutically acceptable liquid carrier such as water, an organic solvent, a mixture of both or pharmaceutically acceptable oils or fats.
- the liquid carrier can contain other suitable pharmaceutical additives such as solubilizers, emulsifiers, buffers, preservatives, sweeteners, flavoring agents, suspending agents, thickening agents, colors, viscosity regulators, stabilizers or osmo-regulators.
- suitable examples of liquid carriers for oral and parenteral administration include water (partially containing additives as above, e.g.
- cellulose derivatives preferably sodium carboxymethyl cellulose solution
- alcohols including monohydric alcohols and polyhydric alcohols, e.g. glycols) and their derivatives, and oils (e.g. fractionated coconut oil and arachis oil).
- the carrier can also be an oily ester such as ethyl oleate and isopropyl myristate.
- Sterile liquid carriers are useful in sterile liquid form compositions for parenteral administration.
- the liquid carrier for pressurized compositions can be halogenated hydrocarbon or other pharmaceutically acceptable propellent.
- Liquid pharmaceutical compositions which are sterile solutions or suspensions can be utilized by, for example, intramuscular, intraperitoneal or subcutaneous injection. Sterile solutions can also be administered intravenously. The compound can also be administered orally either in liquid or solid composition form.
- the pharmaceutical composition is in unit dosage form, e.g. as tablets or capsules.
- the composition is sub-divided in unit dose containing appropriate quantities of the active ingredient;
- the unit dosage forms can be packaged compositions, for example, packeted powders, vials, ampoules, prefilled syringes or sachets containing liquids.
- the unit dosage form can be, for example, a capsule or tablet itself, or it can be the appropriate number of any such compositions in package form.
- the dosage to be used in the treatment must be subjectively determined by the attending physician.
- the compounds of this invention may be employed as a solution, cream, or lotion by formulation with pharmaceutically acceptable vehicles containing 0.1-0.5 percent, preferably 2%, of active compound which may be administered to a fungally affected area.
- the following representative compounds can be prepared from rapamycin and the appropriately terminally-N-substituted amino diacid monoester by employing the method used to prepare the title compound in Example 5.
- the title compound (374 mg, 23%) was prepared by the method described in the previous Example and separated from the compound described in the previous Example by flash chromatography (20-40% ethyl acetate/hexane as the eluant) and isolated as the sesquihydrate.
- the title compound was prepared (0.83 g, 12.8%) along with the 42-monoester as described in Example 10. HPLC analysis showed that the diester is a 7.7:1 mixture of two conformers.
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- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- General Health & Medical Sciences (AREA)
- Biochemistry (AREA)
- Health & Medical Sciences (AREA)
- Genetics & Genomics (AREA)
- Molecular Biology (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Biotechnology (AREA)
- Biophysics (AREA)
- Medicinal Chemistry (AREA)
- Proteomics, Peptides & Aminoacids (AREA)
- Nitrogen And Oxygen Or Sulfur-Condensed Heterocyclic Ring Systems (AREA)
Abstract
Description
TABLE 1
______________________________________
LAF* PLN* Skin Graft
Compound (ratio) (ratio) (days + SD)
______________________________________
Example 1
1.8 0.61 12.0 ± 1.6
Example 2
0.33 0.62 11.5 ± 0.6
Example 3
0.20 + 9.0 ± 0.9
Example 4
4.9 0.18 12.3 ± 0.5
Example 5
0.006 + 8.8 ± 0.9
Example 6
5.4 0.33 11.5 ± 3.5
Example 7
3% at 1 μM**
+ 7.7 ± 1.5
Example 8
0.03 0.41 +
Example 9
0.96 1.34 10.3 ± 0.8
Example 10
2.0 .sup. 0.96.sup.++
12.7 ± 1.2
Example 11
0.004 + 10.5 ± 1.3
Example 12
19.8 -2.87 12.0 ± 2.0
Example 13
22% at 1 μM**
+ 7.0 ± 0.6
Rapamycin
1.0 1.0 12.0 ± 1.7
______________________________________
*Calculation of ratios was described supra.
**Result expressed as percent inhibition of lymphoproliferation at 1
μM.
+ Not evaluated.
.sup.++ Results obtained using cremophore/ethanol as a vehicle for
administration. Ratios of 0.33 and 1.07 were also obtained using
carboxymethyl cellulose as a vehicle for administration.
TABLE 2*
______________________________________
Strain of Candida albicans
ATCC ATCC ATCC ATCC
Compound
10231 38246 38247 38248 3669
______________________________________
Example 1
>0.4 >0.4 >0.4 >0.4 >0.4
Example 2
0.1 0.2 0.2 0.2 0.1
Example 3
0.4 >0.4 >0.4 >0.4 0.4
Example 4
0.1 0.4 0.1 0.1 0.2
Example 5
>0.4 >0.4 >0.4 >0.4 >0.4
Example 6
0.1 >0.4 0.2 0.4 >0.4
Example 7
+ + + + +
Example 8
>0.4 >0.4 >0.4 >0.4 >0.4
Example 9
0.4 >0.4 0.4 >0.4 >0.4
Example 10
0.2 >0.4 0.2 0.4 0.4
Example 11
>0.4 >0.4 >0.4 >0.4 >0.4
Example 12
0.2 >0.4 0.1 0.2 0.4
Example 13
>0.4 >0.4 >0.4 >0.4 >0.4
Rapamycin
0.003 0.025 0.003 0.006 0.025
______________________________________
*expressed as MIC (μg/ml)
+ not evaluated
Claims (22)
Priority Applications (11)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PT98990A PT98990A (en) | 1990-09-19 | 1991-09-17 | PROCESS FOR THE PREPARATION OF CARBOXYLIC ACID ESTERS OF RAPAMICIN |
| CA 2051782 CA2051782A1 (en) | 1990-09-28 | 1991-09-18 | Aminoesters of rapamycin |
| MX9101139A MX9101139A (en) | 1990-09-19 | 1991-09-18 | RAPAMICINE CARBOXYL ACID ESTERS |
| IE330291A IE913302A1 (en) | 1990-09-19 | 1991-09-19 | Aminoesters of rapamycin |
| AU86599/91A AU653175B2 (en) | 1990-09-19 | 1991-09-19 | Carboxylic acid esters of rapamycin |
| HU9300776A HUT65763A (en) | 1990-09-19 | 1991-09-19 | Process for producing carboxylic acid esters of rapamycin and pharmaceutical preparations containing them |
| PCT/US1991/006824 WO1992005179A1 (en) | 1990-09-19 | 1991-09-19 | Carboxylic acid esters of rapamycin |
| KR1019930700829A KR930702357A (en) | 1990-09-19 | 1991-09-19 | Carboxylic Acid Ester of Rapamycin |
| JP3516749A JPH06501012A (en) | 1990-09-19 | 1991-09-19 | Carboxylic acid ester of rapamycin |
| EP19910919248 EP0549727A1 (en) | 1990-09-19 | 1991-09-19 | Carboxylic acid esters of rapamycin |
| FI931203A FI931203A0 (en) | 1990-09-19 | 1993-03-18 | CARBOXYLSYRAESTRAR AV RAPAMYCIN |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US58987890A | 1990-09-28 | 1990-09-28 |
Related Parent Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US58987890A Continuation-In-Part | 1990-09-19 | 1990-09-28 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US5130307A true US5130307A (en) | 1992-07-14 |
Family
ID=24359926
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US07/657,294 Expired - Lifetime US5130307A (en) | 1990-09-19 | 1991-02-19 | Aminoesters of rapamycin |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US5130307A (en) |
Cited By (111)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5252579A (en) * | 1993-02-16 | 1993-10-12 | American Home Products Corporation | Macrocyclic immunomodulators |
| US5256790A (en) * | 1992-08-13 | 1993-10-26 | American Home Products Corporation | 27-hydroxyrapamycin and derivatives thereof |
| WO1994002137A1 (en) * | 1992-07-17 | 1994-02-03 | Smithkline Beecham Corporation | Rapamycin derivatives |
| US5302584A (en) * | 1992-10-13 | 1994-04-12 | American Home Products Corporation | Carbamates of rapamycin |
| US5346893A (en) * | 1992-03-05 | 1994-09-13 | American Home Products Corporation | Rapamycin 42-sulfonates and 42-(N-carbalkoxy) sulfamates useful as immunosuppressive agents |
| US5349060A (en) * | 1993-01-07 | 1994-09-20 | American Home Products Corporation | Rapamycin 31-ester with N,N-dimethylglycine derivatives useful as immunosuppressive agents |
| US5362718A (en) * | 1994-04-18 | 1994-11-08 | American Home Products Corporation | Rapamycin hydroxyesters |
| US5373014A (en) * | 1993-10-08 | 1994-12-13 | American Home Products Corporation | Rapamycin oximes |
| US5378836A (en) * | 1993-10-08 | 1995-01-03 | American Home Products Corporation | Rapamycin oximes and hydrazones |
| US5378696A (en) * | 1990-09-19 | 1995-01-03 | American Home Products Corporation | Rapamycin esters |
| US5385908A (en) * | 1993-11-22 | 1995-01-31 | American Home Products Corporation | Hindered esters of rapamycin |
| US5385909A (en) * | 1993-11-22 | 1995-01-31 | American Home Products Corporation | Heterocyclic esters of rapamycin |
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